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Elastic and inelastic buckling of thin-walled steel liners encased in circulai host pipes under external pressure and thermal effects

机译:外部压力和热效应作用下包裹在循环主管中的薄壁钢衬板的弹性和非弹性屈曲

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This study aims to develop an analytical solution for the elastic buckling pressure and its corresponding equilibrium path of confined, thin-walled liners subjected to temperature variations. The admissible radial displacement function and the minimum potential energy of liners are employed to establish the equations of equilibrium. The steel liners are modelled with two-dimensional finite elements for both elastic and inelastic behaviors. The elastic buckling pressure and the equilibrium path from the computational model are in excellent agreement with the analytical predictions. The analytical solutions for elastic liners and the numerical results for inelastic liners with material and geometric nonlinearities compare well with their respective test results available in the literature. Parametric studies are performed in terms of temperature variation, out-of-roundness imperfection, non-uniform liner-pipe gap, pipe supporting medium flexibility, and steel liner
机译:这项研究的目的是为受温度变化限制的薄壁衬板的弹性屈曲压力及其对应的平衡路径开发一种解析解决方案。允许的径向位移函数和衬套的最小势能被用来建立平衡方程。钢衬里用弹性和非弹性行为的二维有限元建模。计算模型的弹性屈曲压力和平衡路径与分析预测非常吻合。具有材料和几何非线性的弹性衬里的解析解以及非弹性衬里的数值结果与文献中提供的它们各自的测试结果进行了很好的比较。根据温度变化,不圆度缺陷,衬管-管间隙不均匀,管道支撑介质的柔韧性和钢衬进行参数研究

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